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A Peroxisome-Inspired Chemiluminescent Silica Nanodevice for the Intracellular Detection of Biomarkers and Its Application to Insulin-Sensitizer Screening

机译:一种过氧化物血清体积启发的化学发光硅氧化硅纳米型硅纳米型硅纳米型硅纳米型和其在胰岛素 - 敏化剂筛选中的应用

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摘要

The profiling of oxidase-catalyzed biomarkers is an essential procedure for the diagnosis and precise treatment of metabolic diseases. Inspired by the metabolism of H2O2 in peroxisomes, a novel chemiluminescent silica nanodevice (CSN) was designed for the sensitive and selective sensing of intracellular oxidase-catalyzed biomarkers. Oxidases catalyzed the oxidation of biomarkers followed by the production of H2O2, and then the generated H2O2 was employed to trigger chemiluminescence of the CSN. Utilizing this nanodevice, we not only accurately quantified intracellular glucose but also developed its further application for facile insulin sensitizer screening. Furthermore, sensitive and multiparametric analysis of oxidase-catalyzed biomarkers like lactic acid, uric acid, and ethanol was demonstrated. Thus, this peroxisome-inspired CSN holds great promise for the general diagnosis of metabolic diseases and in drug discovery.
机译:氧化酶催化生物标志物的分析是诊断和精确治疗代谢疾病的基本程序。 灵感来自于过氧化合物中H2O2的H2O2的代谢,设计了一种新型化学发光硅纳米型(CSN),用于细胞内氧化酶催化生物标志物的敏感和选择性感测。 氧化酶催化生物标志物的氧化,然后产生H 2 O 2,然后使用产生的H 2 O 2来引发CSN的化学发光。 利用该纳米检测,我们不仅准确地量化细胞内葡萄糖,还可以对易于胰岛素敏化剂筛选进行进一步的应用。 此外,证明了氧化酶催化生物标志物等乳酸,尿酸和乙醇的敏感性和多体分析。 因此,这种过氧化物血清启发的CSN对代谢疾病的一般诊断和药物发现具有很大的承担。

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